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Voltage harmonic distortion compensation with non-linear load power sharing in low-voltage islanded microgrid

机译:低压孤岛微电网中非线性负载功率共享的电压谐波畸变补偿

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Microgrids are designed to operate at a fundamental frequency (50 or 60 Hz). However, certain types of loads generate voltage and/or current harmonics that increase power system heat losses. These harmonic losses reduce system efficiency, cause apparatus overheating and increase power costs. Besides that, the Distributed Generation (DG) is expected to play an important role in future power systems, since it is able to reduce losses, improve power quality to end users. In this paper we propose new harmonic droop controller to compensate the harmonic currents produced by each DG to feed the nonlinear loads. Furthermore, the proposed controller is able to damp the total harmonic distortion of the voltage at the common connection point (PCC). Modeling and simulations incorporate to define the best control parameters for a proper operation. Experimental results are given to show the efficiency of the proposed algorithm. (C) 2018 International Association for Mathematics and Computers in Simulation (IMACS). Published by Elsevier B.V. All rights reserved.
机译:微电网设计为以基本频率(50或60 Hz)运行。但是,某些类型的负载会产生电压和/或电流谐波,从而增加电力系统的热损失。这些谐波损耗会降低系统效率,导致设备过热并增加电源成本。除此之外,由于分布式发电(DG)能够减少损耗,提高最终用户的电能质量,因此有望在未来的电力系统中发挥重要作用。在本文中,我们提出了一种新的谐波下垂控制器,以补偿每个DG产生的谐波电流以馈入非线性负载。此外,所提出的控制器能够抑制公共连接点(PCC)处电压的总谐波失真。建模和仿真可以定义最佳控制参数,以实现正确的操作。实验结果表明了该算法的有效性。 (C)2018国际模拟数学与计算机协会(IMACS)。由Elsevier B.V.发布。保留所有权利。

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